Light propagation in an atomic medium whose coupled electronic levels form a diamond-configuration exhibits a critical dependence on the input conditions. In particular, the relative phase of the input fields gives rise to interference phenomena in the electronic excitation whose interplay with relaxation processes determines the stationary state. We integrate numerically the Maxwell-Bloch equations and observe two metastable behaviors for the relative phase of the propagating fields corresponding to two possible interference phenomena. These phenomena are associated to separate types of response along propagation, minimize dissipation, and are due to atomic coherence. These behaviors could be studied in gases of isotopes of alkali-earth at...
We study the dynamics of an atomic Bose-Einstein condensate in an optical lattice in which the elect...
Quantum interference and coherence effects in the interaction of atoms with the quantized electroma...
Coherent excitation of an atomic excited state occurs during the propagation of near-resonant light ...
Light propagation in an atomic medium whose coupled energy levels form a -configuration exhibits a c...
We study a four-level atomic scheme interacting with four lasers in a closed-loop configuration with...
We present a theoretical treatment of electromagnetically induced transparency and light storage usi...
Quantum interference in atomic media has elicited interest for a very wide range of investigations a...
A scheme is proposed to achieve substantial controllable phase modulation for a probe field propagat...
In this work, interference and coherence phenomena, appearing in atomic and molecular ensembles inte...
We study a four-level atomic scheme interacting with four lasers in a closed-loop configuration with...
Coherent atomic states prepared by laser field can have quantum interference between the different t...
Electromagnetically induced transparency(1-3) is a quantum interference effect that permits the prop...
We analyse the evolution of a weak probe optical field propagation through a five-level atomic mediu...
We investigate the effects of spontaneously generated coherence (SGC) on both the steady and transie...
We develop an approach to generate finite-range atomic interactions via optical Rydberg-state excita...
We study the dynamics of an atomic Bose-Einstein condensate in an optical lattice in which the elect...
Quantum interference and coherence effects in the interaction of atoms with the quantized electroma...
Coherent excitation of an atomic excited state occurs during the propagation of near-resonant light ...
Light propagation in an atomic medium whose coupled energy levels form a -configuration exhibits a c...
We study a four-level atomic scheme interacting with four lasers in a closed-loop configuration with...
We present a theoretical treatment of electromagnetically induced transparency and light storage usi...
Quantum interference in atomic media has elicited interest for a very wide range of investigations a...
A scheme is proposed to achieve substantial controllable phase modulation for a probe field propagat...
In this work, interference and coherence phenomena, appearing in atomic and molecular ensembles inte...
We study a four-level atomic scheme interacting with four lasers in a closed-loop configuration with...
Coherent atomic states prepared by laser field can have quantum interference between the different t...
Electromagnetically induced transparency(1-3) is a quantum interference effect that permits the prop...
We analyse the evolution of a weak probe optical field propagation through a five-level atomic mediu...
We investigate the effects of spontaneously generated coherence (SGC) on both the steady and transie...
We develop an approach to generate finite-range atomic interactions via optical Rydberg-state excita...
We study the dynamics of an atomic Bose-Einstein condensate in an optical lattice in which the elect...
Quantum interference and coherence effects in the interaction of atoms with the quantized electroma...
Coherent excitation of an atomic excited state occurs during the propagation of near-resonant light ...